check quantites of subject and global
- subj qty must be 0 or 1 (atkey) - global must not be 0 if used at non-0
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3 changed files with 56 additions and 27 deletions
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@ -70,3 +70,14 @@ IsQty Qty where
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zero = Zero; one = One
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(+) = plus; (*) = times
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(<=.) = compat
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public export
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data IsSubj : Qty -> Type where
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SZero : IsSubj Zero
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SOne : IsSubj One
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public export
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data IsGlobal : Qty -> Type where
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GZero : IsGlobal Zero
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GAny : IsGlobal Any
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@ -38,6 +38,12 @@ tail : TyContext d (S n) -> TyContext d n
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tail = {tctx $= tail, qctx $= tail}
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private %inline
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globalSubjQty : Global -> Qty
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globalSubjQty (MkGlobal {qty = Zero, _}) = Zero
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globalSubjQty (MkGlobal {qty = Any, _}) = One
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private %inline
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weakI : InferResult d n -> InferResult d (S n)
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weakI = {type $= weakT, qout $= (:< zero)}
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@ -50,85 +56,95 @@ lookupBound pi (VS i) ctx =
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weakI $ lookupBound pi i (tail ctx)
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private %inline
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subjMult : Qty -> Qty -> Subset Qty IsSubj
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subjMult sg qty =
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if sg == Zero || qty == Zero
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then Element Zero %search
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else Element One %search
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mutual
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-- [todo] it seems like the options here for dealing with substitutions are
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-- to either push them or parametrise the whole typechecker over ambient
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-- substitutions. both of them seem like the same amount of work for the
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-- computer but pushing is less work for the me
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--
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-- [todo] probably need to check that pi is 1 or 0 like atkey said
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export covering %inline
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check : MonadThrows [Typing.Error, Equal.Error] m => {d, n : Nat} ->
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(ctx : TyContext d n) -> (pi : Qty) ->
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(ctx : TyContext d n) -> (sg : Qty) -> {auto 0 sgs : IsSubj sg} ->
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(subj : Term d n) -> (ty : Term d n) ->
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m (CheckResult n)
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check ctx pi subj ty = check' ctx pi (pushSubstsT subj) ty
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check ctx sg subj ty = check' ctx sg (pushSubstsT subj) ty
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export covering %inline
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infer : MonadThrows [Typing.Error, Equal.Error] m => {d, n : Nat} ->
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(ctx : TyContext d n) -> (pi : Qty) -> (subj : Elim d n) ->
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(ctx : TyContext d n) -> (sg : Qty) -> {auto 0 sgs : IsSubj sg} ->
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(subj : Elim d n) ->
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m (InferResult d n)
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infer ctx pi subj = infer' ctx pi (pushSubstsE subj)
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infer ctx sg subj = infer' ctx sg (pushSubstsE subj)
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export covering
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check' : MonadThrows [Typing.Error, Equal.Error] m => {d, n : Nat} ->
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(ctx : TyContext d n) -> (pi : Qty) ->
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(ctx : TyContext d n) -> (sg : Qty) -> {auto 0 sgs : IsSubj sg} ->
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(subj : NotCloTerm d n) -> (ty : Term d n) ->
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m (CheckResult n)
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check' ctx pi (Element (TYPE l) _) ty = do
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check' ctx sg (Element (TYPE l) _) ty = do
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l' <- expectTYPE ty
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expectEqualQ zero pi
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expectEqualQ zero sg
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unless (l < l') $ throw $ BadUniverse l l'
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pure zero
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-- [todo] factor this stuff out
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check' ctx pi (Element (Pi qty x arg res) _) ty = do
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check' ctx sg (Element (Pi qty x arg res) _) ty = do
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l <- expectTYPE ty
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expectEqualQ zero pi
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expectEqualQ zero sg
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ignore $ check ctx zero arg (TYPE l)
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case res of
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TUsed res => ignore $ check (extendTy arg zero ctx) zero res (TYPE l)
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TUnused res => ignore $ check ctx zero res (TYPE l)
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pure zero
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check' ctx pi (Element (Lam x body) _) ty = do
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check' ctx sg (Element (Lam x body) _) ty = do
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(qty, arg, res) <- expectPi ty
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-- [todo] do this properly?
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let body = fromScopeTerm body; res = fromScopeTerm res
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qout <- check (extendTy arg (pi * qty) ctx) pi body res
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qout <- check (extendTy arg (sg * qty) ctx) sg body res
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popQ qty qout
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check' ctx pi (Element (E e) _) ty = do
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infres <- infer ctx pi e
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check' ctx sg (Element (E e) _) ty = do
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infres <- infer ctx sg e
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ignore $ check ctx zero ty (TYPE UAny)
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infres.type `subT` ty
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pure infres.qout
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export covering
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infer' : MonadThrows [Typing.Error, Equal.Error] m => {d, n : Nat} ->
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(ctx : TyContext d n) -> (pi : Qty) -> (subj : NotCloElim d n) ->
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(ctx : TyContext d n) -> (sg : Qty) -> {auto 0 sgs : IsSubj sg} ->
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(subj : NotCloElim d n) ->
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m (InferResult d n)
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infer' ctx pi (Element (F x) _) =
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-- [todo] check that global is erased ==> pi = zero
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infer' ctx sg (Element (F x) _) =
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case lookup x ctx.globals of
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Just g => pure $ InfRes {type = g.type, qout = zero}
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Just g => do
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expectEqualQ (globalSubjQty g) sg
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pure $ InfRes {type = g.type, qout = zero}
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Nothing => throw $ NotInScope x
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infer' ctx pi (Element (B i) _) =
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pure $ lookupBound pi i ctx
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infer' ctx sg (Element (B i) _) =
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pure $ lookupBound sg i ctx
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infer' ctx pi (Element (fun :@ arg) _) = do
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funres <- infer ctx pi fun
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infer' ctx sg (Element (fun :@ arg) _) = do
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funres <- infer ctx sg fun
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(qty, argty, res) <- expectPi funres.type
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argout <- check ctx (pi * qty) arg argty
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let Element sg' _ = subjMult sg qty
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argout <- check ctx sg' arg argty
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pure $ InfRes {type = fromScopeTerm res //. ((arg :# argty) ::: id),
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qout = funres.qout + argout}
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infer' ctx pi (Element (tm :# ty) _) = do
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infer' ctx sg (Element (tm :# ty) _) = do
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ignore $ check ctx zero ty (TYPE UAny)
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qout <- check ctx pi tm ty
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qout <- check ctx sg tm ty
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pure $ InfRes {type = ty, qout}
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@ -34,6 +34,8 @@ QOutput = QContext
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public export
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record Global where
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constructor MkGlobal
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qty : Qty
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0 qtyGlobal : IsGlobal qty
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type, term : forall d, n. Term d n
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public export
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